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Electrical and Mechanical Properties of Conductive Carbon Black Filled Epoxidized Natural Rubber

机译:导电炭黑填充环氧化天然橡胶的电气和力学性能

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Electrical and mechanical properties of epoxidized nattiral rubber (ENR-25) filled with conductive carbon black (CCB) have been investigated. SEM was used to analyze dispersion of CCB particles in rubber matrix. The results indicated that the AC conductivity increase with increasing volume fraction of carbon black as well as frequency. The percolation thresholds of the electrical conductivity was found at 0.10 volume fraction of CCB. Furthermore, addition of CCB at volume fraction 0.05 caused the highest tensile strength of the composites. The tensile strength and elongation at break were decreased with increasing content of CCB greater than 0.05 volume fraction. However, the volume fraction of CCB at 0.10 Demonstrated the most suitable, proportion for the ENR composites with superior electrical and mechanical properties.
机译:研究了填充导电炭黑(CCB)的环氧化氮橡胶(ENR-25)的电气和力学性能。 SEM用于分析CCB粒子在橡胶基质中的分散。结果表明,交流电导率随着炭黑的体积分数和频率的增加而增加。在0.10体积分数的CCB时发现电导率的渗透阈值。此外,在体积分数下加入CCB 0.05导致复合材料的最高拉伸强度。随着CCB含量大于0.05体积分数,抗拉强度和断裂处的伸长率降低。然而,0.10的CCB的体积分数证明了具有优异的电气和机械性能的ENR复合材料的最合适的比例。

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